Abstract:
A method of creating an e-mail address book and sending an e-mail by using the e-mail address book in an image forming apparatus, and an image forming apparatus using the method. A method of sending an e-mail by using an e-mail address book in an image forming apparatus capable of scanning a document, includes receiving basic information of at least one receiver and a scan option corresponding to the at least one receiver; storing the basic information and the scan option in the e-mail address book; selecting a receiver from the e-mail address book; scanning the document in accordance with a scanning option corresponding to the selected receiver; attaching the scanned document to the e-mail and sending the e-mail to the selected receiver
Abstract:
A system that generates an electronically readable image file that represents an image. In one embodiment, the system comprises an image input, an encoding module, and a tag module. The image input obtains color information representative of an image. The encoding module encodes the color information representative of the image into an image file by encoding the color information into a format associated with the image file. The tag module inserts a tag into the image file, wherein the tag is an object to be rendered, and conveys information about the generation of the image file.
Abstract:
An image forming apparatus of the invention includes a read unit to read an image and to generate temporal image data from the image, a capacity specifying unit to specify a specified capacity for final image data, and a generation condition setting unit to set a generation condition for generating the final image data from the temporal image data, the final image data not exceeding the specified capacity is generated, and the capacity of the generated final image data is displayed.
Abstract:
Disclosed herein is a method of storing or transferring an image along with an image-processing parameter for processing the image. When storing or transferring a second image for storage or transfer which has a second resolution for storage or transfer differing from a reference resolution, a reference image-processing parameter set according to a reference resolution image having the reference resolution is corrected based on a difference between the reference resolution and the second resolution, so that it becomes a second parameter corresponding to the second image. The second parameter obtained by the correction is stored or transferred along with the second image.
Abstract:
Disclosed herein is a method of storing or transferring an image along with an image-processing parameter for processing the image. When storing or transferring a second image for storage or transfer which has a second resolution for storage or transfer differing from a reference resolution, a reference image-processing parameter set according to a reference resolution image having the reference resolution is corrected based on a difference between the reference resolution and the second resolution, so that it becomes a second parameter corresponding to the second image. The second parameter obtained by the correction is stored or transferred along with the second image.
Abstract:
An image input section pre-inputs an image. A temporary storage section temporarily stores the image input by the image input section. An attribute control section controls at least attribute information of the input information temporarily stored in the temporary storage section. A selection section permits a user at the origin of image request to select a desired one of already stored images stored in the temporary storage section in accordance with the attribute information controlled by the attribute control section. An image transfer section reads out the desired image selected by the selection section from the temporary storage section at the time of the request by origin of the image request and transfers the desired image to the origin of the image request via a network.
Abstract:
A printer may be provided with a print setting folder storage area, a data sending device, a data receiving device, and a print device. The print setting folder storage area may be capable of storing a plurality of print setting folders. Each print setting folder may be an association of print setting data and a print setting folder address. The data sending device may be capable of sending the print setting folder address of each print setting folder stored in the print setting folder storage area to an information processing device. The data receiving device may be capable of receiving combination data sent from the information processing device. The combination data may include a data file storage command and a data file, and the data file storage command may include a print setting folder address. In a case where the combination data is received by the data receiving device, the print device may print the data file included in the combination data in accordance with the print setting data associated with the print setting folder address included in the combination data. A scanner may also have a similar configuration to the printer.
Abstract:
A data transmission system where an image providing device and a printer are directly connected by a 1394 serial bus, a command is sent from the image providing device to the printer, then a response to the command is returned from the printer to the image providing device. Image data is sent from the image providing device to the printer based on information included in the response. The printer converts the image data outputted from the image providing device into print data. Thus, printing can be performed without a host computer by directly connecting the image providing device and the printer by the 1394 serial bus or the like.
Abstract:
Forced compression halftone processes and forced compression techniques may be used to forcibly compress page raster images passed between a Digital Front End (DFE) processor and a Continuous Feed (CF) printer within a CF printing system. If a DFE processor determines that a compressed image size exceeds a static or dynamically predetermined threshold, the DFE processor may re-render the image using a “forced compression” halftone process, such as 2-to-1 forced compression, 4-to-1 forced compression, reduced resolution, etc. Once the page raster image has been re-rendered, the DFE processor may use a forced compression technique, which is complementary to the applied “forced compression” halftone process to re-compress the page raster image. The approach allows page raster images to be compressed to meet interface bandwidth constraints associated with the physical interface between the DFE processor and CF print engine, thereby allowing otherwise unprintable jobs to be printed with reasonable quality.
Abstract:
An automatic scanning parameter setting device and method. The automatic scanning parameter setting device is a scanner that automatically sets the scanning parameters of a plurality of scan images so that scanning can be conducted in batches. The automatic scanning parameter setting device includes an image input device, an analysis device and a control unit. The image input device is attached to the scanner for inputting a plurality of scan images. A portion of the scan images contains a set parameter format. The set parameter format contains a plurality of scanning parameter values. The analysis device performs an analysis of the scan images containing recorded scan parameter values. The control unit uses the analyzed scanning parameter values to conduct a scanning parameter setting operation on the scan images having recorded scanning parameter values as well as the ordered scan images after the scan images with recorded scan parameter values but without recorded scan parameter values.